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Fundamental study of TiO2 nanoparticles as photoactive elements for water decontamination

机译:TiO2纳米粒子作为水净化用光敏元素的基础研究

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Access to potable water is currently a major concern due to population growth and the decline in clean water sources. One of the most important processes applied during the treatment of water, is the removal of pathogens as bacteria due that can reduce the preventable mortality of infectious intestinal diseases. Previous studies on the manufacture of films based on rutile-phase titanium dioxide nanoparticles embedded in an inorganic SOG matrix on Corning glasses showed moderate photocatalytic activity against the inactivation of E. coli. However, the preparation conditions of these films must be improved, and their photocatalytic activity in the inactivation of E. coli using titanium dioxide in anatase phase titanium dioxide with a lower particle size must be evaluated. In this study, the ideal conditions for the synthesis of nanoparticles and preparation of titanium dioxide films for their subsequent application in photocatalytic reactions for the inactivation of pathogens were found. An increase in the titanium dioxide films photocatalytic activity in the inactivation of bacteria was obtained with respect to those previously reported.
机译:由于人口增长和清洁水源的减少,获得饮用水目前是一个主要问题。在水处理过程中应用的最重要的过程之一是去除病原体作为细菌,因为它可以降低传染性肠道疾病的可预防死亡率。以前在康宁玻璃上制造的基于金红石相二氧化钛纳米粒子嵌入无机SOG基质中的薄膜的制造研究显示出适度的光催化活性,可抵抗大肠杆菌的失活。但是,必须改善这些膜的制备条件,并且必须评估它们在使用锐钛矿相的二氧化钛和较小粒径的二氧化钛灭活大肠杆菌中的光催化活性。在这项研究中,找到了合成纳米颗粒和制备二氧化钛薄膜的理想条件,以便随后将其应用在灭活病原体的光催化反应中。相对于先前报道的那些,在细菌灭活中获得了二氧化钛膜光催化活性的增加。

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